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A practical temperature sensor with high sensitivity utilizing a fiber loop mirror with a long-period grating in a photonic crystal fiber

机译:一种具有高灵敏度的实用温度传感器,利用光子晶体光纤长周期光栅

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A practical sensor with high sensitivity for the temperature measurement by using a highly birefringent (HiBi) fiber loop mirror (FLM) concatenated with a long-period grating (LPG) written in a photonic crystal fiber (PCF) is proposed. Only HiBi-FLM acts as a sensor head, while the PCF-LPG serves as a temperature insensitive filter to provide wavelength dependent optical power transmission. A bandpass filter is used to provide a narrow band light source, thus only one of transmission peaks of the HiBi-FLM is located within a negative linear region of the LPG's transmission spectrum. By utilizing the stable filtering function of the PCF-LPG, the resonant wavelength variation of the FLM with temperature is transferred effectively to the intensity variation of the output light. The temperature applied on the FLM is deduced by a cheap optical power. As a result, the sensitivity of the sensor is about -0.4872 dB/°C. When an optical power meter with the resolution of 0.01 dB, a temperature resolution of 0.02°C is achieved.
机译:提出了通过使用用在光子晶体(PCF)中写入的长周期光栅(LPG)连接的高度双折射(HIBI)光纤环镜(FLM)具有高灵敏度的实际传感器。只有Hibi-FLM充当传感器头,而PCF-LPG用作温度不敏感的滤波器,以提供波长依赖性光电传输。带通滤波器用于提供窄带光源,因此只有Hibi-FLM的传输峰之一位于LPG的透射光谱的负线性区域内。通过利用PCF-LPG的稳定滤波功能,通过温度的FLM的谐振波长变化有效地传递到输出光的强度变化。施加在FLM上的温度被廉价的光学功率推断出来。结果,传感器的灵敏度约为-0.4872dB /°C。当分辨率为0.01dB的光功率计时,实现了0.02℃的温度分辨率。

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